An electrical connector includes an insulating body, and multiple terminals and a base plate insert-molded with the insulating body. The insulating body has an outer side edge. Multiple grooves are concavely provided inward from the outer side edge. Two protruding blocks protrude toward each other and inward each of the grooves from two opposite sides of each of the grooves. The base plate has multiple strip connecting portions. Prior to the insert-molding, the strip connecting portions are integrally connected to a same strip. After the insert-molding, the strip connecting portions are broken from the strip, each strip connecting portion is located in a corresponding groove, and upper and lower surfaces of each strip connecting portion are exposed in the corresponding groove. The strip connecting portions do not exceed outward beyond the outer side edge. Two opposite sides of each strip connecting portion abut the two protruding blocks.
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8. An electrical connector, configured to electrically connect a first mating component and a second mating component, the electrical connector comprising:
an insulating body, having an outer side edge, wherein a plurality of grooves are concavely provided inward from the outer side edge, the grooves run vertically through the insulating body, and two protruding blocks protrude toward each other and inward each of the grooves from two opposite sides of each of the grooves; and
a metal sheet, insert-molded with the insulating body, wherein the metal sheet has a plurality of strip connecting portions, prior to the insert-molding, the strip connecting portions are integrally connected to a same strip; and after the insert-molding, the strip connecting portions are broken from the strip, each of the strip connecting portions is located in a corresponding one of the grooves, an upper surface and a lower surface of each of the strip connecting portions are exposed in the corresponding one of the grooves, the strip connecting portions do not exceed outward beyond the outer side edge, and two opposite sides of each of the strip connecting portions abut the two protruding blocks;
wherein the metal sheet is cut to form a plurality of terminals, configured to mate with at least one of the first mating component and the second mating component.
11. A method of manufacturing an electrical connector, the electrical connector configured to electrically connect a first mating component and a second mating component, the method comprising:
step 1: providing a metal plate in a flat plate shape, cutting a strip and a metal sheet on the metal plate, and cutting a plurality of terminals, and a plurality of strip connecting portion integrally connected to the strip on the metal sheet, wherein the terminals are configured to mate with one of the first mating component and the second mating component;
step 2: placing the metal sheet to a mold such that each of a plurality of upper protruding posts of the mold covers an upper surface of a corresponding one of the strip connecting portions and passes horizontally beyond two opposite sides of the corresponding one of the strip connecting portions, and each of a plurality of lower protruding posts of the mold covers a lower surface of the corresponding one of the strip connecting portions and passes horizontally beyond the two opposite sides of the corresponding one of the strip connecting portions; and forming an insulating body on the metal sheet by insert-molding; and
step 3: after the step 2, breaking the strip connecting portions and removing the strip, wherein a breaking position does not exceed outward beyond an outer side edge of the insulating body.
1. An electrical connector, configured to electrically connect a first mating component and a second mating component, the electrical connector comprising:
an insulating body, located above the second mating component, wherein an upper surface of the insulating body has a plurality of upper openings, a lower surface of the insulating body has a plurality of lower openings, the insulating body has an outer side edge, a plurality of grooves are concavely provided inward from the outer side edge, the grooves run vertically through the insulating body, and two protruding blocks protrude toward each other and inward each of the grooves from two opposite sides of each of the grooves; and
a plurality of terminals arranged in a plurality of rows and a plurality of columns and a base plate, collectively formed by cutting from a metal sheet, wherein the terminals and the base plate are insert-molded with the insulating body, and the base plate is provided horizontally;
wherein each of the terminals has a base portion and an elastic arm connected to the base portion, the base portion is provided to be at least partially horizontal and co-planar to the base plate, the base portion has a conductive portion configured to be conductively connected to the second mating component, the conductive portion is exposed downward to a corresponding one of the lower openings, the elastic arm bends upward and is exposed upward to a corresponding one of the upper openings to be in upward contact with the first mating component, the base plate has a plurality of strip connecting portions, and prior to the insert-molding, the strip connecting portions are integrally connected to a same strip; and
wherein after the insert-molding, the strip connecting portions are broken from the strip, each of the strip connecting portions is located in a corresponding one of the grooves, an upper surface and a lower surface of each of the strip connecting portions are exposed in the corresponding one of the grooves, the strip connecting portions do not exceed outward beyond the outer side edge, and two opposite sides of each of the strip connecting portions abut the two protruding blocks.
2. The electrical connector according to
3. The electrical connector according to
the insulating body is provided with a plurality of through holes running vertically through the insulating body;
a cutting slot is formed between the base plate and the base portion by cutting the base portion, a through slot is formed between the base plate and the elastic arm by cutting the elastic arm, and the cutting slot and the through slot are respectively U-shaped and provided opposite to each other; and
the elastic arm is exposed in a corresponding one of the through holes, the cutting slot is filled by the insulating body, and a portion of the cutting slot is exposed in the corresponding one of the through holes.
4. The electrical connector according to
5. The electrical connector according to
the elastic arm comprises a wide portion and a narrow portion connected to the wide portion, the narrow portion is configured to be in upward contact with the first mating component, a width of the wide portion is greater than a width of the narrow portion, and a width of the base portion is less than the width of the wide portion; and
the third side edge passes outward beyond the fourth side edge along the width direction of the base portion, the base portion and the narrow portion of an adjacent terminal of the terminals are arranged along the width direction of the base portion, and the base portion and the wide portion of the adjacent terminal are staggered.
6. The electrical connector according to
7. The electrical connector according to
9. The electrical connector according to
10. The electrical connector according to
12. The method according to
each of the terminals has a base portion and an elastic arm connected to the base portion, the elastic arm is configured to be in contact with the first mating component, and the base portion has a conductive portion to be conductively connected to the second mating component;
in the step 1, the base portion is cut on the metal sheet, thereby forming a cutting slot on the metal sheet, and the cutting slot surrounds a side edge of the base portion; and
prior to the insert-molding, each pair of a plurality of pairs of positioning posts of the mold clamp the elastic arm vertically and cover a portion of the cutting slot, thereby forming a plurality of through holes on the insulating body on the insulating body after the insert-molding, and each of the through holes exposes the corresponding elastic arm and the portion of the cutting slot.
13. The method according to
in the step 1, the elastic arm is cut on the metal sheet, thereby forming a through slot on the metal sheet, and the through slot surrounds a side edge of the base portion; and
in the step 2, when the positioning posts clamp the elastic arm, the positioning posts further cover the through slot and exceed horizontally beyond the through slot, thereby separating an edge of the through hole from the through slot after the insert-molding.
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This non-provisional application claims priority to and the benefit of, pursuant to 35 U.S.C. § 119(a), patent application Serial No. CN202011506223.7 filed in China on Dec. 18, 2020. The disclosure of the above application is incorporated herein in its entirety by reference.
Some references, which may include patents, patent applications and various publications, are cited and discussed in the description of this disclosure. The citation and/or discussion of such references is provided merely to clarify the description of the present disclosure and is not an admission that any such reference is “prior art” to the disclosure described herein. All references cited and discussed in this specification are incorporated herein by reference in their entireties and to the same extent as if each reference were individually incorporated by reference.
The present invention relates to an electrical connector and a method of manufacturing the same, and particularly to an electrical connector electrically connecting a chip module and a circuit board and a method of manufacturing the same.
The background description provided herein is for the purpose of generally presenting the context of the disclosure. Work of the presently named inventors, to the extent it is described in this background section, as well as aspects of the description that may not otherwise qualify as prior art at the time of filing, are neither expressly nor impliedly admitted as prior art against the present disclosure.
An existing electrical connector includes an insulating body and a metal sheet. The metal sheet is provided horizontally and is insert-molded with the insulating body. The metal sheet is cut and bends to form a plurality of terminals, and the terminals are accommodated in the insulating body. The metal sheet has a plurality of strip connecting portions. Prior to the insert-molding, the strip connecting portions are integrally connected to a same strip. After the insert-molding, the strip connecting portions are broken from the strip. To prevent the broken strip connecting portions from scratching the working staffs or being scratched by outer objects caused by protruding out of an outer side edge of the insulating body, the broken strip connecting portions do not exceed outward beyond the outer side edge of the insulating body, and the two opposite sides of each strip connecting portion abut the insulating body. However, when the strip is shaking vertically to be broken, the two opposite sides of each strip connecting portion strongly apply forces to the insulating body, thereby causing damages to the insulating body to a certain degree. To solve this issue, in another existing electrical connector, the strip connecting portions protrude out of the outer side edge of the insulating body, and when the strip is broken, the strip connecting portions are not in contact with the insulating body, thereby not damaging the insulating body and achieving the objective to protect the insulating body. However, with the strip connecting portions protruding out of the outer side edge of the insulating body, the strip connecting portions may easily be scratched by the outer objects, or the strip connecting portions may easily scratch the working staffs.
Therefore, a heretofore unaddressed need to design a novel electrical connector and a method of manufacturing the same exists in the art to address the aforementioned deficiencies and inadequacies.
In view of the deficiency of the background, the present invention is directed to an electrical connector and a method of manufacturing the same, such that the whole structure of the insulating body is not affected by breaking the strip, and preventing the strip connecting portions from being scratched by outer objects or scratching the working staffs.
To achieve the foregoing objective, the present invention adopts the following technical solutions.
An electrical connector is configured to electrically connect a first mating component and a second mating component. The electrical connector includes: an insulating body, located above the second mating component, wherein an upper surface of the insulating body has a plurality of upper openings, a lower surface of the insulating body has a plurality of lower openings, the insulating body has an outer side edge, a plurality of grooves are concavely provided inward from the outer side edge, the grooves run vertically through the insulating body, and two protruding blocks protrude toward each other and inward each of the grooves from two opposite sides of each of the grooves; and a plurality of terminals arranged in a plurality of rows and a plurality of columns and a base plate, collectively formed by cutting from a metal plate, wherein the terminals and the base plate are insert-molded with the insulating body, and the base plate is provided horizontally; wherein each of the terminals has a base portion and an elastic arm connected to the base portion, the base portion is provided to be at least partially horizontal and co-planar to the base plate, the base portion has a conductive portion configured to be conductively connected to the second mating component, the conductive portion is exposed downward to a corresponding one of the lower openings, the elastic arm bends upward and is exposed upward to a corresponding one of the upper openings to be in upward contact with the first mating component, the base plate has a plurality of strip connecting portions, and prior to the insert-molding, the strip connecting portions are integrally connected to a same strip; and wherein after the insert-molding, the strip connecting portions are broken from the strip, each of the strip connecting portions is located in a corresponding one of the grooves, an upper surface and a lower surface of each of the strip connecting portions are exposed in the corresponding one of the grooves, the strip connecting portions do not exceed outward beyond the outer side edge, and two opposite sides of each of the strip connecting portions abut the two protruding blocks.
In certain embodiments, an upper surface of each of the protruding blocks is flush with the upper surface of each of the strip connecting portions, a lower surface of each of the protruding blocks is flush with the lower surface of each of the strip connecting portions, and a tail end of each of the protruding block is flush with the outer side edge.
In certain embodiments, the insulating body is provided with a plurality of through holes running vertically through the insulating body; a cutting slot is formed between the base plate and the base portion by cutting the base portion, a through slot is formed between the base plate and the elastic arm by cutting the elastic arm, and the cutting slot and the through slot are respectively U-shaped and provided opposite to each other; and the elastic arm is exposed in a corresponding one of the through holes, the cutting slot is filled by the insulating body, and a portion of the cutting slot is exposed in the corresponding one of the through holes.
In certain embodiments, two opposite side edges of the base portion along a width direction thereof are respectively defined as two first side edges, two opposite side edges of the elastic arm along a width direction thereof are respectively defined as two second side edges, a side edge of the cutting slot opposite to a corresponding one of the two first side edges is defined as a third side edge, a side edge of the through slot opposite to a corresponding one of the two second side edges is defined as a fourth side edge, and a distance between the corresponding one of the two first side edges and the third side edge is greater than a distance between the corresponding one of the two second side edges and the fourth side edge.
In certain embodiments, the elastic arm comprises a wide portion and a narrow portion connected to the wide portion, the narrow portion is configured to be in upward contact with the first mating component, a width of the wide portion is greater than a width of the narrow portion, and a width of the base portion is less than the width of the wide portion; and the third side edge passes outward beyond the fourth side edge along the width direction of the base portion, the base portion and the narrow portion of an adjacent terminal of the terminals are arranged along the width direction of the base portion, and the base portion and the wide portion of the adjacent terminal are staggered.
In certain embodiments, the terminals comprise a plurality of signal terminals and a plurality of ground terminals, the through slot and the cutting slot corresponding to each of the signal terminals are in communication, the through slot and the cutting slot corresponding to each of the ground terminals are not in communication, the base plate forms a connecting portion between the through slot and the cutting slot corresponding to each of the ground terminals to be connected to the elastic arm, and an edge of each of the through holes is spaced apart from the through slot.
In certain embodiments, the base portion comprises a first portion being horizontal and a second portion formed by bending perpendicularly from the first portion and extending downward, the insulating body has an insulating block surrounding the second portion, the insulating body is provided with a slot around the insulating block, the first portion is partially exposed to the slot, the insulating block gradually becomes larger along an upward direction from a bottom thereof, and a portion of the second portion protruding out of the insulating block forms the conductive portion.
In addition, to achieve the foregoing objective, the present invention further adopts the following technical solutions.
An electrical connector is configured to electrically connect a first mating component and a second mating component. The electrical connector includes: an insulating body, having an outer side edge, wherein a plurality of grooves are concavely provided inward from the outer side edge, the grooves run vertically through the insulating body, and two protruding blocks protrude toward each other and inward each of the grooves from two opposite sides of each of the grooves; and a metal sheet, insert-molded with the insulating body, wherein the metal sheet has a plurality of strip connecting portions, prior to the insert-molding, the strip connecting portions are integrally connected to a same strip; and after the insert-molding, the strip connecting portions are broken from the strip, each of the strip connecting portions is located in a corresponding one of the grooves, an upper surface and a lower surface of each of the strip connecting portions are exposed in the corresponding one of the grooves, the strip connecting portions do not exceed outward beyond the outer side edge, and two opposite sides of each of the strip connecting portions abut the two protruding blocks; wherein the metal sheet is cut to form a plurality of terminals, configured to mate with at least one of the first mating component and the second mating component.
In certain embodiments, an upper surface of each of the protruding blocks is flush with the upper surface of each of the strip connecting portions, a lower surface of each of the protruding blocks is flush with the lower surface of each of the strip connecting portions, and a tail end of each of the protruding block is flush with the outer side edge.
In certain embodiments, the terminals are arranged in a plurality of rows and a plurality of columns, an upper surface of the insulating body has a plurality of upper openings, a lower surface of the insulating body has a plurality of lower openings, each of the terminals has a conductive portion configured to be conductively connected to the second mating component, the conductive portion is exposed downward to a corresponding one of the lower openings, each of the terminals further has an elastic arm configured to be in upward contact with the first mating component, and the elastic arm bends upward and is exposed upward to one of the upper openings.
In addition, to achieve the foregoing objective, the present invention further adopts the following technical solutions.
A method of manufacturing an electrical connector is provided. The electrical connector is configured to electrically connect a first mating component and a second mating component. The method includes:
step 1: providing a metal plate in a flat plate shape, cutting a strip and a metal sheet on the metal plate, and cutting a plurality of terminals, and a plurality of strip connecting portion integrally connected to the strip on the metal sheet, wherein the terminals are configured to mate with one of the first mating component and the second mating component;
step 2: placing the metal sheet to a mold such that each of a plurality of upper protruding posts of the mold covers an upper surface of a corresponding one of the strip connecting portions and passes horizontally beyond two opposite sides of the corresponding one of the strip connecting portions, and each of a plurality of lower protruding posts of the mold covers a lower surface of the corresponding one of the strip connecting portions and passes horizontally beyond the two opposite sides of the corresponding one of the strip connecting portions; and forming an insulating body on the metal sheet by insert-molding; and
step 3: after the step 2, breaking the strip connecting portions and removing the strip, wherein a breaking position does not exceed outward beyond an outer side edge of the insulating body.
In certain embodiments, each of the terminals has a base portion and an elastic arm connected to the base portion, the elastic arm is configured to be in contact with the first mating component, and the base portion has a conductive portion to be conductively connected to the second mating component; in the step 1, the base portion is cut on the metal plate, thereby forming a cutting slot on the metal plate, and the cutting slot surrounds a side edge of the base portion; and prior to the insert-molding, each pair of a plurality of pairs of positioning posts of the mold clamp the elastic arm vertically and cover a portion of the cutting slot, thereby forming a plurality of through holes on the insulating body on the insulating body after the insert-molding, and each of the through holes exposes the corresponding elastic arm and the portion of the cutting slot.
In certain embodiments, in the step 1, the elastic arm is cut on the metal plate, thereby forming a through slot on the metal plate, and the through slot surrounds a side edge of the base portion; and in the step 2, when the positioning posts clamp the elastic arm, the positioning posts further cover the through slot and exceed horizontally beyond the through slot, thereby separating an edge of the through hole from the through slot after the insert-molding.
Compared with the related art, certain embodiments of the present invention has the following beneficial effects. Two protruding blocks protrude opposite to each other from the two opposite sides of each groove, and the two protruding blocks abut the two opposite sides of a corresponding strip connecting portion. When the strip is removed, the damages caused by the acting forces applied are absorbed by the two protruding blocks (that is, when the strip is removed, only the protruding blocks are damaged, and it does not matter whether the protruding blocks are damaged), thus not affecting the whole structure of the insulating body. Further, each strip connecting portion is located in a corresponding groove, and the strip connecting portions do not exceed outward beyond the outer side edge, thus preventing the strip connecting portions from being scratched by outer objects, and preventing the strip connecting portions from scratching the working staffs.
These and other aspects of the present invention will become apparent from the following description of the preferred embodiment taken in conjunction with the following drawings, although variations and modifications therein may be effected without departing from the spirit and scope of the novel concepts of the disclosure.
The accompanying drawings illustrate one or more embodiments of the disclosure and together with the written description, serve to explain the principles of the disclosure. Wherever possible, the same reference numbers are used throughout the drawings to refer to the same or like elements of an embodiment, and wherein:
The present invention is more particularly described in the following examples that are intended as illustrative only since numerous modifications and variations therein will be apparent to those skilled in the art. Various embodiments of the invention are now described in detail. Referring to the drawings, like numbers indicate like components throughout the views. As used in the description herein and throughout the claims that follow, the meaning of “a”, “an”, and “the” includes plural reference unless the context clearly dictates otherwise. Also, as used in the description herein and throughout the claims that follow, the meaning of “in” includes “in” and “on” unless the context clearly dictates otherwise. Moreover, titles or subtitles may be used in the specification for the convenience of a reader, which shall have no influence on the scope of the present invention.
It will be understood that when an element is referred to as being “on” another element, it can be directly on the other element or intervening elements may be present therebetween. In contrast, when an element is referred to as being “directly on” another element, there are no intervening elements present. As used herein, the term “and/or” includes any and all combinations of one or more of the associated listed items.
Furthermore, relative terms, such as “lower” or “bottom” and “upper” or “top,” may be used herein to describe one elements relationship to another element as illustrated in the Figures. It will be understood that relative terms are intended to encompass different orientations of the device in addition to the orientation depicted in the Figures. For example, if the device in one of the figures is turned over, elements described as being on the “lower” side of other elements would then be oriented on “upper” sides of the other elements. The exemplary term “lower”, can therefore, encompasses both an orientation of “lower” and “upper,” depending of the particular orientation of the figure. Similarly, if the device in one of the figures is turned over, elements described as “below” or “beneath” other elements would then be oriented “above” the other elements. The exemplary terms “below” or “beneath” can, therefore, encompass both an orientation of above and below.
As used herein, “around”, “about” or “approximately” shall generally mean within 20 percent, preferably within 10 percent, and more preferably within 5 percent of a given value or range. Numerical quantities given herein are approximate, meaning that the term “around”, “about” or “approximately” can be inferred if not expressly stated.
As used herein, the terms “comprising”, “including”, “carrying”, “having”, “containing”, “involving”, and the like are to be understood to be open-ended, i.e., to mean including but not limited to.
The description will be made as to the embodiments of the present invention in conjunction with the accompanying drawings in
Referring to
Referring to
Referring to
Referring to
Referring to
Referring to
The method of manufacturing the electrical connector according to certain embodiments of the present invention includes the following steps:
Step 1, referring to
Step 2, referring to
Step 3, referring to
Step 4, referring to
Step 5: referring to
In other embodiments, it is possible that the elastic arm 212 is cut after the insulating body 1 and the metal sheet P are insert-molded. Thus, when the elastic arm 212 of each signal terminal 21a is cut, it is possible to simultaneously cut the connecting portion 25 of each signal terminal 21a.
In sum, the electrical connector and the method of manufacturing the same according to certain embodiments of the present invention have the following beneficial effects:
1. Two protruding blocks protrude toward each other and inward each of the grooves from two opposite sides of each of the grooves, and the two protruding blocks abut two opposite sides of a corresponding strip connecting portion. When the strip is removed, the damages caused by the acting forces applied may be absorbed by the two protruding blocks, thus not affecting the whole structure of the insulating body. Each strip connecting portion is located in a corresponding groove, and the strip connecting portions do not exceed outward beyond the outer side edge, thus preventing the strip connecting portions from being scratched by outer objects, and preventing the strip connecting portions from scratching the working staffs.
2. A portion of the cutting slot is exposed in the corresponding through hole, thus reducing the volume of the electrical connector to a certain degree, which is conducive to the dense arrangement of the terminals, and the connecting portion connected to a corresponding signal terminal can be cut cleanly, preventing the terminals from being connected together and short-circuiting.
3. A distance between the corresponding one of the two first side edges and the third side edge is greater than a distance between the corresponding one of the two second side edges and the fourth side edge, such that the width of the base portion is reduced. The base portion and the narrow portion of the adjacent terminal are arranged along the width direction of the base portion, and the base portion and the wide portion of the adjacent terminal are staggered, thereby increasing the distance between the base portion and the adjacent terminal, and further reducing the electrical capacitive effect of the base portion.
The foregoing description of the exemplary embodiments of the invention has been presented only for the purposes of illustration and description and is not intended to be exhaustive or to limit the invention to the precise forms disclosed. Many modifications and variations are possible in light of the above teaching.
The embodiments were chosen and described in order to explain the principles of the invention and their practical application so as to activate others skilled in the art to utilize the invention and various embodiments and with various modifications as are suited to the particular use contemplated. Alternative embodiments will become apparent to those skilled in the art to which the present invention pertains without departing from its spirit and scope. Accordingly, the scope of the present invention is defined by the appended claims rather than the foregoing description and the exemplary embodiments described therein.
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